Search results for "molecular model"

showing 10 items of 274 documents

From Five- to Six-Membered Rings:  3,4-Diarylquinolinone as Lead for Novel p38MAP Kinase Inhibitors

2007

In this study we describe the design, synthesis, and biological evaluation of 3-(4-fluorophenyl)-4-pyridin-4-ylquinoline-2(1H)-one (5) as a new inhibitor of MAPK with a p38alphaMAPK IC50 of 1.8 muM. By keeping the common vicinal pyridine/4-F-phenyl pharmacophore, such as in prototypical imidazole 20 or isoxazole 13 but in 5 connected to the six-membered quinoline core, we were particularly interested in comparing biological activity, details of molecular geometry, and different binding modes of these compounds. Compounds 20 and 13 were active both in the p38alpha- and JNK3-assay, whereas 5 was selective for p38alpha, with no JNK3 inhibition. By comparing the X-ray structures of the compound…

Models MolecularBinding SitesMolecular modelStereochemistryQuinolineBiological activityQuinolonesCrystallography X-RayHeterocyclic Compounds 4 or More Ringsp38 Mitogen-Activated Protein KinasesStructure-Activity Relationshipchemistry.chemical_compoundchemistryMitogen-Activated Protein Kinase 10Drug DiscoveryPyridineMolecular MedicineImidazoleMoietyIsoxazolePharmacophoreJournal of Medicinal Chemistry
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Electron Microscopy of Human Erythrocyte Catalase: New Two-Dimensional Crystal Forms

1993

Abstract Using the mica-spreading "negative staining-carbon film" procedure, human erythrocyte catalase has been shown to create a number of different periodic or crystalline two-dimensional (2-D) arrays which differ in the arrangement of molecules in the repeating units and the lattice type. Digital image processing has been performed with a 2-D array which contains regularly arranged "undulating" rows of molecules and also with a 2-D crystal form, exhibiting pgg (p22 1 2 1 ) symmetry and lattice parameters of a = 12.7 nm, b = 44 nm, and γ= 92°. The data are compared with our previous analysis of a different human erythrocyte catalase 2-D crystal, and the effect of partial-depth negative s…

Models MolecularErythrocytesFourier AnalysisbiologyMolecular modelProtein ConformationChemistryStereochemistryCatalaseNegative stainlaw.inventionCrystalMicroscopy ElectronCrystallographyStructural BiologyCatalaseTransmission electron microscopylawLattice (order)biology.proteinHumansMoleculeComputer SimulationElectron microscopeJournal of Structural Biology
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Optimization of Triazine Nitriles as Rhodesain Inhibitors: Structure-Activity Relationships, Bioisosteric Imidazopyridine Nitriles, and X-ray Crystal…

2013

The cysteine protease rhodesain of Trypanosoma brucei parasites causing African sleeping sickness has emerged as a target for the development of new drug candidates. Based on a triazine nitrile moiety as electrophilic headgroup, optimization studies on the substituents for the S1, S2, and S3 pockets of the enzyme were performed using structure-based design and resulted in inhibitors with inhibition constants in the single-digit nanomolar range. Comprehensive structure-activity relationships clarified the binding preferences of the individual pockets of the active site. The S1 pocket tolerates various substituents with a preference for flexible and basic side chains. Variation of the S2 subs…

Models MolecularImidazopyridineMolecular modelNitrilePyridinesStereochemistryCathepsin LTrypanosoma brucei bruceiSubstituentCysteine Proteinase InhibitorsCrystallography X-RayLigandsBiochemistryStructure-Activity Relationshipchemistry.chemical_compoundParasitic Sensitivity TestsNitrilesDrug DiscoveryHumansMoietyGeneral Pharmacology Toxicology and PharmaceuticsTriazinePharmacologyDose-Response Relationship DrugMolecular StructurebiologyTriazinesChemistryLigandOrganic ChemistryImidazolesActive siteCysteine Endopeptidasesbiology.proteinMolecular MedicineChemMedChem
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Synthesis, Anti-Inflammatory Activity, and in Vitro Antitumor Effect of a Novel Class of Cyclooxygenase Inhibitors: 4-(Aryloyl)phenyl Methyl Sulfones

2010

Following our previous research on anti-inflammatory drugs (NSAIDs), we report on the design and synthesis of 4-(aryloyl)phenyl methyl sulfones. These substances were characterized for their capacity to inhibit cyclooxygenase (COX-1 and COX-2) isoenzymes. Molecular modeling studies showed that the methylsulfone group of these compounds was inserted deep in the pocket of the human COX-2 binding site, in an orientation that precludes hydrogen bonding with Arg120, Ser353, and Tyr355 through their oxygen atoms. The N-arylindole 33 was the most potent inhibitor of COX-2 and also the most selective (COX-1/COX-2 IC(50) ratio was 262). The indole derivative 33 was further tested in vivo for its ant…

Models MolecularIndolesMolecular modelCell SurvivalStereochemistrymedicine.drug_classAntineoplastic AgentsAnti-inflammatoryStructure-Activity RelationshipIn vivoCell Line TumorDrug DiscoverymedicineAnimalsHumansCyclooxygenase InhibitorsSulfonesBinding siteIC50Cell ProliferationIndole testCyclooxygenase 2 InhibitorsbiologyChemistryStereoisomerismSettore CHIM/08 - Chimica FarmaceuticaIn vitroRats4-(Aryloyl)phenyl methyl sulfones anti-inflammatory activity antitumor effect COX-1/COX-2 selectivityCyclooxygenase 1biology.proteinThermodynamicsMolecular MedicineCyclooxygenaseDrug Screening Assays AntitumorHydrophobic and Hydrophilic InteractionsJournal of Medicinal Chemistry
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Structure and Dynamics of RNA Guanine Quadruplexes in SARS-CoV-2 Genome. Original Strategies against Emerging Viruses

2021

Guanine quadruplex (G4) structures in the viral genome have a key role in modulating viruses' biological activity. While several DNA G4 structures have been experimentally resolved, RNA G4s are definitely less explored. We report the first calculated G4 structure of the RG-1 RNA sequence of SARS-CoV-2 genome, obtained by using a multiscale approach combining quantum and classical molecular modeling and corroborated by the excellent agreement between the corresponding calculated and experimental circular dichroism spectra. We prove the stability of the RG-1 G4 arrangement as well as its interaction with G4 ligands potentially inhibiting viral protein translation.

Models MolecularLetterMolecular modelSARS-CoV-2ChemistryViral proteinGuanineCOVID-19RNATranslation (biology)Genome ViralComputational biologymedicine.disease_causeG-quadruplexGenomeG-Quadruplexeschemistry.chemical_compoundSettore CHIM/03 - Chimica Generale E InorganicamedicineHumansNucleic Acid ConformationRNA ViralGeneral Materials SciencePhysical and Theoretical ChemistryDNAThe Journal of Physical Chemistry Letters
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What is the form of muscimol from fly agaric mushroom (Amanita muscaria) in water? An insight from NMR experiment supported by molecular modeling.

2020

ARTYKUŁ Z BADAŃ SPECJALNYCH

Models MolecularMagnetic Resonance SpectroscopyAmanita010402 general chemistry01 natural scienceschemistry.chemical_compoundReceptors GABAComputational chemistryMoleculeHumansGeneral Materials ScienceGABA-A Receptor Antagonistsindirect spin‐spin coupling constantsNMR in waterDensity Functional TheoryCarbon Isotopesbiology010405 organic chemistryAgaricmolecular modelingMuscimolChemical shiftWaterGeneral ChemistryCarbon-13 NMRbiology.organism_classification0104 chemical sciencesSolventnervous systemchemistryMuscimolGIAO NMRZwitterionProtonsAmanita muscariaMagnetic resonance in chemistry : MRCREFERENCES
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3-Aryl-2-[1H-benzotriazol-1-yl]acrylonitriles: a novel class of potent tubulin inhibitors.

2011

During a screening for compounds that could act against Mycobacterium tuberculosis, a series of new cellular antiproliferative agents was identified. The most cytotoxic molecules were evaluated against a panel of human cell lines derived from hematological and solid human tumors. In particular, (E)-2-(1H-benzo[d] [1,2,3]triazol-1-yl)-3-(4-methoxyphenyl)acrylonitrile (1) was found to be of a potency comparable to etoposide and greater than 6-mercaptopurine in all cell lines tested. Accordingly, a synthesis of a new series of (E)-2-(5,6-dichloro-1H-benzo[d] [1,2,3]triazol-1-yl)-3-(4-R-phenyl)acrylonitriles was conducted in order to extend the studies of structure-activity relationship (SAR) f…

Models MolecularMagnetic Resonance SpectroscopyMolecular modelStereochemistryAnti-cancer drugsBinding CompetitiveGas Chromatography-Mass SpectrometryAnti-cancer drugchemistry.chemical_compoundStructure-Activity RelationshipTubulinAnti-cancer drugs; drug design and development; computer assisted drug designDrug DiscoveryK562 CellmedicineStructure–activity relationshipHumansdrug design and developmentPharmacologybiologyAcrylonitrileChemistryArylOrganic ChemistryCell Cyclecomputer assisted drug designGeneral MedicineCell cycleTriazolesTubulinPodophyllotoxinCell cultureTubulin Binding Agentbiology.proteinTriazoleColchicineK562 CellsHumanmedicine.drugEuropean journal of medicinal chemistry
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Hydrogen-bond-mediated self-assembly of 26-membered diaza tetraester crowns of 3,5-disubstituted 1 h -pyrazole. Dimerization study in the solid state…

2011

By using an improved synthetic method reported earlier, the cyclic stannoxanes obtained from RN-diethanolamine (R = Me, Bu) and dibutyltin oxide have been reacted with 1H-pyrazole-3,5-dicarbonyl dichloride to afford 26-membered diaza tetraester crowns (1, R = Me; 3, R = Bu) and 39-membered triaza hexaester crowns (2, R = Me; 4, R = Bu). The new structures were identified from their analytical and spectroscopic (1H and 13C NMR, FAB-MS, and/or ESI-MS) data. Both diaza tetraester crowns (1 and 3), containing two 1H-pyrazole units, self-assemble into dimeric species through the formation of four hydrogen bonds involving the two NH pyrazole groups and the two tertiary amine groups of both crowns…

Models MolecularMagnetic Resonance SpectroscopyMolecular modelTertiary amineSolid-statePyrazoleCrystallography X-RayMedicinal chemistrychemistry.chemical_compoundOrganotin CompoundsAminesDibutyltin oxideHydrogen bondOrganic ChemistryEstersHydrogen BondingCarbon-13 NMRDeuteriumCrown CompoundsSolutionschemistryCyclizationEthanolaminesMolecular ProbesSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationPyrazolesChloroformSelf-assemblyDimerization
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Pyrazolobenzotriazinones Derivatives as COX Inhibitors: Synthesis Biological Activity and Molecular Modeling Studies

2010

Pyrazolylbenzotriazinones are endowed with structural analogy with the COX-2 selective inhibitor celecoxib. Considering that our research group has long been interested in the 3-pyrazolyl-substituted benzotriazinones as anti-inflammatory agents, six new pyrazolylbenzotriazinone derivatives 16a-c and 18a-c have been prepared by reacting the opportune ethyl 5-(2-aminobenzamido)-1-(pyridin-2-yl)-1H-pyrazole-4-carboxylate or 5-(2-aminobenzamido)-1-(pyridin-2-yl)-1H-pyrazole-4-carboxyic acid with sodium nitrite in glacial acetic acid. The biological studies revealed a good pharmacological profile for some pyrazolylbenzotriazinones and, in the case of the ethyl 5-(4-oxo-1,2,3-benzotriazin-3(4H)-y…

Models MolecularMolecular modelAnti-Inflammatory AgentsPharmaceutical Science2-(1H-pyrazol-1-yl)pyridines 4(3H)-Benzotriazinones docking COX-2 inhibitorsCOX-2 inhibitorschemistry.chemical_compoundAcetic acidStructure-Activity Relationship4(3H)-BenzotriazinonesDrug DiscoverymedicineStructure–activity relationshipOrganic chemistryHumansSodium nitriteSulfonamidesCyclooxygenase 2 InhibitorsTriazinesBiological activitySettore CHIM/08 - Chimica FarmaceuticachemistryDocking (molecular)CelecoxibCelecoxibSettore BIO/14 - FarmacologiaPyrazolesSelectivitymedicine.drug
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3-Chlorotyramine Acting as Ligand of the D2 Dopamine Receptor. Molecular Modeling, Synthesis and D2 Receptor Affinity.

2014

We synthesized and tested 3-chlorotyramine as a ligand of the D2 dopamine receptor. This compound displayed a similar affinity by this receptor to that previously reported for dopamine. In order to understand further the experimental results we performed a molecular modeling study of 3-chlorotyramine and structurally related compounds. By combining molecular dynamics simulations with semiempirical (PM6), ab initio and density functional theory calculations, a simple and generally applicable procedure to evaluate the binding energies of these ligands interacting with the D2 dopamine receptors is reported here. These results provided a clear picture of the binding interactions of these compou…

Models MolecularMolecular modelChemistryReceptors Dopamine D2Organic ChemistryBinding energyAtoms in moleculesAb initioTyramineComputer Science ApplicationsMolecular dynamicsDopamine D2 Receptor AntagonistsStructural BiologyDopamine receptorComputational chemistryDopamine receptor D2Drug DiscoveryHydrocarbons ChlorinatedMolecular MedicineHumansDensity functional theoryMolecular informatics
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